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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Graphene-wrapped mesoporous MnCO3 single crystals synthesized by a dynamic floating electrodeposition method for high performance lithium-ion storage
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Graphene-wrapped mesoporous MnCO3 single crystals synthesized by a dynamic floating electrodeposition method for high performance lithium-ion storage

机译:动态浮动电沉积方法合成石墨烯包裹的介孔MnCO3单晶用于高性能锂离子存储

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摘要

A unique structure of graphene-wrapped mesoporous single crystals (MSCs) of MnCO3 has been successfully synthesized and used as the anode for lithium-ion batteries (LIBs). In a departure from previous high-temperature (> 500 degrees C) synthesis approaches to MSCs, we have developed a simple, low-temperature (70 degrees C) and template-free method, referred to as dynamic floating electrodeposition (DFE), to fabricate graphene-wrapped MnCO3 MSCs. In the DFE method, we achieved the reduction of GOs to RGOs, the deposition of MnCO3 MSCs on graphene, and a graphene-wrapped morphology, all three goals in one electrochemical process. The resulting submicron, graphene-wrapped MnCO3 MSCs reached a high reversible capacity of 900 mA h g(-1) after the initial cycle and delivered over 1000 mA h g(-1) after 130 cycles. The reversible capacity also remained at this high level for more than 400 cycles, and maintained 422 mA h g(-1) at a high rate of 5000 mA g(-1). It is the first time that this high performance has been achieved using MnCO3 for lithium-ion storage. Furthermore, this superior electrochemical performance was found to be highly related to the designed structure, graphene-wrapped MSCs, of MnCO3.
机译:已经成功合成了MnCO3的石墨烯包裹的介孔单晶(MSC)的独特结构,并将其用作锂离子电池(LIB)的阳极。与以前针对MSC的高温(> 500摄氏度)合成方法不同,我们开发了一种简单的低温(70摄氏度)且无模板的方法,称为动态浮动电沉积(DFE),制备石墨烯包裹的MnCO3 MSC。在DFE方法中,我们实现了将RGOs还原为GO,将MnCO3 MSCs沉积在石墨烯上以及石墨烯包裹的形态,这是在一个电化学过程中实现的所有三个目标。所得的亚微米石墨烯包裹的MnCO3 MSC在初始循环后达到900 mA h g(-1)的高可逆容量,并在130个循环后超过1000 mA h g(-1)传递。可逆容量也保持在此高水平超过400个循环,并以5000 mA g(-1)的高速率维持422 mA h g(-1)。使用MnCO3进行锂离子存储是首次实现这种高性能。此外,发现这种优异的电化学性能与MnCO3的设计结构(石墨烯包裹的MSC)高度相关。

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